Roose Johnna L, Pakrasi Himadri B
Department of Biology, Washington University, St. Louis, Missouri 63130, USA.
J Biol Chem. 2004 Oct 29;279(44):45417-22. doi: 10.1074/jbc.M408458200. Epub 2004 Aug 11.
Photosystem II (PSII) is a large membrane protein complex that catalyzes oxidation of water to molecular oxygen. During its normal function, PSII is damaged and frequently turned over. The maturation of the D1 protein, a key component in PSII, is a critical step in PSII biogenesis. The precursor form of D1 (pD1) contains a C-terminal extension, which is removed by the protease CtpA to yield PSII complexes with oxygen evolution activity. To determine the temporal position of D1 processing in the PSII assembly pathway, PSII complexes containing only pD1 were isolated from a CtpA-deficient strain of the cyanobacterium Synechocystis 6803. Although membranes from the mutant cell had nearly 50% manganese, no manganese was detected in isolated DeltactpAHT3 PSII, indicating a severely decreased manganese affinity. However, chlorophyll fluorescence decay kinetics after a single saturating flash suggested that the donor Y(Z) was accessible to exogenous Mn(2+) ions. Furthermore, the extrinsic proteins PsbO, PsbU, and PsbV were not present in PSII isolated from this mutant. However, PsbO and PsbV were present in mutant membranes, but the amount of PsbV protein was consistently less in the mutant membranes compared with the control membranes. We conclude that D1 processing precedes manganese binding and assembly of the extrinsic proteins into PSII. Interestingly, the Psb27 protein was found to be more abundant in DeltactpAHT3 PSII than in HT3 PSII, suggesting a possible role of Psb27 as an assembly factor during PSII biogenesis.
光系统II(PSII)是一种大型膜蛋白复合体,可催化水氧化为分子氧。在其正常功能过程中,PSII会受到损伤并频繁更新。D1蛋白是PSII的关键组成部分,其成熟是PSII生物合成中的关键步骤。D1的前体形式(pD1)含有一个C端延伸,该延伸被蛋白酶CtpA去除,以产生具有放氧活性的PSII复合体。为了确定D1加工在PSII组装途径中的时间位置,从蓝藻集胞藻6803的CtpA缺陷菌株中分离出仅含有pD1的PSII复合体。尽管突变细胞的膜中锰含量接近50%,但在分离的DeltactpAHT3 PSII中未检测到锰,表明锰亲和力严重下降。然而,单次饱和闪光后的叶绿素荧光衰减动力学表明,供体Y(Z)可被外源Mn(2+)离子接近。此外,从该突变体中分离的PSII中不存在外在蛋白PsbO、PsbU和PsbV。然而,PsbO和PsbV存在于突变体膜中,但与对照膜相比,突变体膜中PsbV蛋白的量始终较少。我们得出结论,D1加工先于锰结合和外在蛋白组装到PSII中。有趣的是,发现Psb27蛋白在DeltactpAHT3 PSII中比在HT3 PSII中更丰富,这表明Psb27在PSII生物合成过程中可能作为组装因子发挥作用。